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Kappa opioids inhibit physiologically identified medullary pain modulating neurons and reduce morphine
I D Meng1, J P Johansen, I Harasawa
1Department of Neurology, University of California, San Francisco, California, USA. imeng@une.edu
Abstract:
Microinjection of kappa opioid receptor (KOR) agonists into the rostral ventromedial medulla (RVM) attenuates mu-opioid receptor mediated antinociception and stress-induced analgesia, yet is also reported to have an analgesic effect. To determine how KOR agonists produce both antinociceptive and antianalgesic actions within the RVM, the KOR agonist U69593 was microinjected directly into the RVM while concurrently monitoring tail flick latencies and RVM neuronal activity. Among RVM neurons recorded in vivo, two types show robust changes in activity just prior to the nocifensive tail flick reflex: ON cells burst just prior to a tail flick and their activity is pronociceptive, whereas OFF cells pause just prior to the tail flick and their activity is antinociceptive. Although RVM microinjection of U69593 did not affect tail flick latencies on its own, it did attenuate the on cell burst, an effect blocked by co-injection of the KOR antagonist, nor-binaltorphimine (nor-BNI). Furthermore, U69593 inhibited ongoing activity in subsets of OFF cells (4/11) and NEUTRAL cells (3/9). Microinjection of U69593 into the RVM also attenuated morphine antinociception and suppressed the excitation of off cells. Together with previous in vivo and in vitro studies, these results are consistent with the idea that KOR agonists can be either pronociceptive through direct inhibition of OFF cells, or antianalgesic through both postsynaptic inhibition and presynaptic inhibition of glutamate inputs to RVM OFF cells.
Insights
Kappa opioid receptor (KOR) agonists in the rostral ventromedial medulla (RVM) can produce both pain relief and pain enhancement. This study reveals KOR agonists can be pronociceptive by inhibiting pain-sensing neurons.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Kappa opioid receptor (KOR) agonists in the rostral ventromedial medulla (RVM) exhibit dual effects, attenuating some analgesia while also reportedly causing pain relief.
- The RVM contains ON cells (pronociceptive) and OFF cells (antinociceptive) crucial for pain processing.
Purpose of the Study:
- To elucidate the mechanisms by which KOR agonists exert both antinociceptive and antianalgesic effects within the RVM.
- Investigate the impact of KOR agonists on RVM neuronal activity and pain reflexes.
Main Methods:
- Microinjection of the KOR agonist U69593 into the RVM of rats.
- Concurrent monitoring of tail flick latencies and RVM neuronal activity (ON and OFF cells).
- Co-administration of KOR antagonist nor-binaltorphimine (nor-BNI) to assess specificity.
Main Results:
- U69593 microinjection attenuated the burst activity of pronociceptive ON cells, an effect blocked by nor-BNI.
- U69593 inhibited ongoing activity in a subset of antinociceptive OFF cells and NEUTRAL cells.
- U69593 attenuated morphine-induced antinociception and suppressed OFF cell excitation.
Conclusions:
- KOR agonists can act as pronociceptive agents through direct inhibition of RVM OFF cells.
- KOR agonists may also be antianalgesic via postsynaptic and presynaptic inhibition of glutamate inputs to RVM OFF cells.
- These findings clarify the complex role of KOR agonists in pain modulation within the RVM.
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